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理解油菜素内酯调控机制以提高植物抗逆性:综述

Understanding brassinosteroid-regulated mechanisms to improve stress tolerance in plants: a critical review.

作者信息

Nawaz Fahim, Naeem Muhammad, Zulfiqar Bilal, Akram Asim, Ashraf Muhammad Yasin, Raheel Muhammad, Shabbir Rana Nauman, Hussain Rai Altaf, Anwar Irfan, Aurangzaib Muhammad

机构信息

Department of Agronomy, MNS University of Agriculture, Multan, Pakistan.

Department of Agronomy, UCA & ES, The Islamia University of Bahawalpur, Bahawalpur, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2017 Jul;24(19):15959-15975. doi: 10.1007/s11356-017-9163-6. Epub 2017 May 24.

Abstract

Brassinosteroids (BRs) are steroidal plant hormones involved in regulation of physiological and molecular processes to ameliorate various biotic and abiotic stresses. Exogenous application of BRs to improve stress tolerance in plants has recently become a high research priority. Several studies have revealed the involvement of these steroidal hormones in upregulation of stress-related defense genes and their cross talk with other metabolic pathways. This is likely to stimulate research on many unanswered questions regarding their role in enhancing the ability of plants to tolerate adverse environmental conditions. Thus, this review appraises new insights on mechanisms mediating BR-regulated changes in plants, focused mainly on their involvement in regulation of physiological and molecular mechanisms under stress conditions. Herein, examples of BR-stimulated modulation of antioxidant defense system and upregulation of transcription factors in plants exposed to various biotic (bacterial, viral, and fungal attack) and abiotic stresses (drought, salinity, heat, low temperature, and heavy metal stress) are discussed. Based on these insights, future research in the current direction can be helpful to increase our understanding of BR-mediated complex and interrelated processes under stress conditions.

摘要

油菜素甾醇(BRs)是一类甾体植物激素,参与调节生理和分子过程,以缓解各种生物和非生物胁迫。最近,外源施用油菜素甾醇以提高植物的胁迫耐受性已成为一项重要的研究重点。多项研究表明,这些甾体激素参与上调与胁迫相关的防御基因,并与其他代谢途径相互作用。这可能会激发对许多未解决问题的研究,这些问题涉及它们在增强植物耐受不利环境条件能力方面的作用。因此,本综述评估了介导油菜素甾醇调节植物变化的机制的新见解,主要关注它们在胁迫条件下参与调节生理和分子机制的情况。本文讨论了在遭受各种生物(细菌、病毒和真菌攻击)和非生物胁迫(干旱、盐度、高温、低温和重金属胁迫)的植物中,油菜素甾醇刺激调节抗氧化防御系统以及上调转录因子的实例。基于这些见解,当前方向的未来研究有助于增进我们对胁迫条件下油菜素甾醇介导的复杂且相互关联过程的理解。

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